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首页> 外文期刊>Veterinary Microbiology >A novel I117T substitution in neuraminidase of highly pathogenic avian influenza H5N1 virus conferring reduced susceptibility to oseltamivir and zanamivir
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A novel I117T substitution in neuraminidase of highly pathogenic avian influenza H5N1 virus conferring reduced susceptibility to oseltamivir and zanamivir

机译:高致病性禽流感H5N1病毒的神经氨酸酶新颖的I117T替代,对奥司他韦和扎沙纳米韦的易感性降低了易感性

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Occurrence of avian influenza (AI) with Neuraminidase (NA) mutations which confer reduced neuraminidase inhibitor (NAI) susceptibility has remained a cause of concern. The susceptibility to NAIs of 67 highly pathogenic avian influenza H5N1 viruses isolated during 2006-2012 in India was tested in phenotypic fluorescence-based NA inhibition assay, sequence analysis and in ovo. One isolate showed a novel NA I117T amino acid substitution (N2 numbering) and eight isolates showed previously known NAI-resistance marker mutations (I117V, E119D, N294S, total 9/67). The overall incidence of resistant variants was 13.4%. The novel I117T substitution reduced oseltamivir susceptibility by 18.6-fold and zanamivir susceptibility by 11.8-fold, compared to the wild type Al H5N1virus, thus showed cross-resistance to both oseltamivir and zanamivir in NA inhibition assays. However, the other two isolates with I117V substitution were sensitive to both the NAIs. In addition, the comparison of growth of the I117T and I117V variants in presence of NAI's in the in ovo assays exhibited difference in growth levels. The present study reports the natural occurrence of a novel I117T mutation in AI H5N1 virus conferring cross-resistance to oseltamivir and zanamivir highlighting the urgent need of antiviral surveillance of AI viruses.
机译:具有赋予神经氨酸酶抑制剂(NAI)敏感性降低的神经氨酸酶(NA)突变的禽流感(NA)的发生仍然是令人担忧的原因。在印度2006-2012期间,在印度的基于表型荧光的NA抑制测定,序列分析和OVO中,测试了67个高度致病的禽流感H5N1病毒的敏感性。一种分离物显示新的Na I117T氨基酸取代(N2编号)和8个分离物显示出先前已知的Nai抗性标记突变(I117V,E119D,N294S,总计9/67)。抗性变体的总发动率为13.4%。与野生型Al H5N1Virus相比,新颖的I117T替代通过11.8倍和Zanamivir易感性减少了18.6倍和Zanamivir易感性,从而显示出对Na抑制测定中的奥司他韦和Zanamivir两者的交叉抗性。然而,与I117V替代的另外两个分离物对NAI敏感。此外,在ovo测定中在Nai的Nai存在下的I117T和I117V变体的生长比较表现出生长水平的差异。本研究报告了AI H5N1病毒新型I117T突变的自然发生,赋予奥司他韦和扎纳米韦的交叉抗性,突出了迫切需要抗病毒监测AI病毒。

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